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首页> 外文期刊>Applied and Environmental Microbiology >Plasmid pAMI2 of Paracoccus aminophilus JCM 7686 Carries N,N-Dimethylformamide Degradation-Related Genes Whose Expression Is Activated by a LuxR Family Regulator
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Plasmid pAMI2 of Paracoccus aminophilus JCM 7686 Carries N,N-Dimethylformamide Degradation-Related Genes Whose Expression Is Activated by a LuxR Family Regulator

机译:氨基副球菌JCM 7686的质粒pAMI2携带N,N-二甲基甲酰胺降解相关基因,其表达被LuxR家族调节物激活

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N,N-Dimethylformamide (DMF), a toxic solvent used in the chemical industry, is frequently present in industrial wastes. Plasmid pAMI2 (18.6 kb) of Paracoccus aminophilus JCM 7686 carries genetic information which is crucial for methylotrophic growth of this bacterium, using DMF as the sole source of carbon and energy. Besides a conserved backbone related to pAgK84 of Agrobacterium radiobacter K84, pAMI2 carries a three-gene cluster coding for the protein DmfR, which has sequence similarities to members of the LuxR family of transcription regulators, and two subunits (DmfA1 and DmfA2) of N,N-dimethylformamidase, an enzyme of high substrate specificity that catalyzes the first step in the degradation of DMF. Genetic analysis revealed that these genes, which are all placed in the same orientation, constitute an inducible operon whose expression is activated in the presence of DMF by the positive transcription regulator DmfR. This operon was used to construct a strain able to degrade DMF at high concentrations that might be used in the biotreatment of DMF-containing industrial wastewaters. To our knowledge, this is the first study to provide insights into the genetic organization and regulation as well as the dissemination in bacteria of genes involved in the enzymatic breakdown of DMF.
机译: N N -二甲基甲酰胺(DMF)是化学工业中使用的有毒溶剂,经常出现在工业废料中。使用DMF作为唯一的碳和能量来源,嗜热副球菌 JCM 7686的质粒pAMI2(18.6 kb)具有对于该细菌的甲基营养生长至关重要的遗传信息。除与 Agrobacterium radiobacter K84的pAgK84相关的保守骨架外,pAMI2还携带一个编码DmfR蛋白的三基因簇,该簇与转录调节子LuxR家族的成员具有序列相似性,并具有两个亚基( N N -二甲基甲酰胺酶的DmfA1和DmfA2),一种高底物特异性酶,可催化DMF降解的第一步。遗传分析表明,所有这些基因都以相同的方向放置,构成了一个诱导型操纵子,其表达在DMF存在下被正转录调节因子DmfR激活。该操纵子用于构建能够以高浓度降解DMF的菌株,该菌株可用于含DMF的工业废水的生物处理。就我们所知,这是第一项提供有关DMF酶促分解基因的组织和调控以及在细菌中传播的见解的研究。

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